x86/xen: drop tests for highmem in pv code
With support for 32-bit pv guests gone pure pv-code no longer needs to test for highmem. Dropping those tests removes the need for flushing in some places. Signed-off-by: Juergen Gross <jgross@suse.com> Reviewed-by: Boris Ostrovsky <boris.ostrovsky@oracle.com> Signed-off-by: Juergen Gross <jgross@suse.com>
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@ -345,15 +345,13 @@ static void set_aliased_prot(void *v, pgprot_t prot)
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pte_t *ptep;
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pte_t pte;
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unsigned long pfn;
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struct page *page;
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unsigned char dummy;
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void *va;
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ptep = lookup_address((unsigned long)v, &level);
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BUG_ON(ptep == NULL);
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pfn = pte_pfn(*ptep);
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page = pfn_to_page(pfn);
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pte = pfn_pte(pfn, prot);
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/*
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@ -383,14 +381,10 @@ static void set_aliased_prot(void *v, pgprot_t prot)
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if (HYPERVISOR_update_va_mapping((unsigned long)v, pte, 0))
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BUG();
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if (!PageHighMem(page)) {
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void *av = __va(PFN_PHYS(pfn));
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va = __va(PFN_PHYS(pfn));
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if (av != v)
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if (HYPERVISOR_update_va_mapping((unsigned long)av, pte, 0))
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BUG();
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} else
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kmap_flush_unused();
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if (va != v && HYPERVISOR_update_va_mapping((unsigned long)va, pte, 0))
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BUG();
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preempt_enable();
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}
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@ -537,25 +537,26 @@ __visible p4d_t xen_make_p4d(p4dval_t p4d)
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PV_CALLEE_SAVE_REGS_THUNK(xen_make_p4d);
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#endif /* CONFIG_PGTABLE_LEVELS >= 5 */
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static int xen_pmd_walk(struct mm_struct *mm, pmd_t *pmd,
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int (*func)(struct mm_struct *mm, struct page *, enum pt_level),
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bool last, unsigned long limit)
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static void xen_pmd_walk(struct mm_struct *mm, pmd_t *pmd,
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void (*func)(struct mm_struct *mm, struct page *,
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enum pt_level),
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bool last, unsigned long limit)
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{
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int i, nr, flush = 0;
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int i, nr;
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nr = last ? pmd_index(limit) + 1 : PTRS_PER_PMD;
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for (i = 0; i < nr; i++) {
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if (!pmd_none(pmd[i]))
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flush |= (*func)(mm, pmd_page(pmd[i]), PT_PTE);
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(*func)(mm, pmd_page(pmd[i]), PT_PTE);
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}
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return flush;
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}
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static int xen_pud_walk(struct mm_struct *mm, pud_t *pud,
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int (*func)(struct mm_struct *mm, struct page *, enum pt_level),
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bool last, unsigned long limit)
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static void xen_pud_walk(struct mm_struct *mm, pud_t *pud,
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void (*func)(struct mm_struct *mm, struct page *,
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enum pt_level),
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bool last, unsigned long limit)
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{
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int i, nr, flush = 0;
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int i, nr;
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nr = last ? pud_index(limit) + 1 : PTRS_PER_PUD;
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for (i = 0; i < nr; i++) {
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@ -566,29 +567,26 @@ static int xen_pud_walk(struct mm_struct *mm, pud_t *pud,
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pmd = pmd_offset(&pud[i], 0);
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if (PTRS_PER_PMD > 1)
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flush |= (*func)(mm, virt_to_page(pmd), PT_PMD);
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flush |= xen_pmd_walk(mm, pmd, func,
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last && i == nr - 1, limit);
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(*func)(mm, virt_to_page(pmd), PT_PMD);
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xen_pmd_walk(mm, pmd, func, last && i == nr - 1, limit);
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}
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return flush;
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}
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static int xen_p4d_walk(struct mm_struct *mm, p4d_t *p4d,
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int (*func)(struct mm_struct *mm, struct page *, enum pt_level),
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bool last, unsigned long limit)
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static void xen_p4d_walk(struct mm_struct *mm, p4d_t *p4d,
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void (*func)(struct mm_struct *mm, struct page *,
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enum pt_level),
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bool last, unsigned long limit)
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{
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int flush = 0;
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pud_t *pud;
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if (p4d_none(*p4d))
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return flush;
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return;
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pud = pud_offset(p4d, 0);
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if (PTRS_PER_PUD > 1)
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flush |= (*func)(mm, virt_to_page(pud), PT_PUD);
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flush |= xen_pud_walk(mm, pud, func, last, limit);
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return flush;
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(*func)(mm, virt_to_page(pud), PT_PUD);
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xen_pud_walk(mm, pud, func, last, limit);
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}
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/*
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@ -603,12 +601,12 @@ static int xen_p4d_walk(struct mm_struct *mm, p4d_t *p4d,
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* We must skip the Xen hole in the middle of the address space, just after
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* the big x86-64 virtual hole.
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*/
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static int __xen_pgd_walk(struct mm_struct *mm, pgd_t *pgd,
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int (*func)(struct mm_struct *mm, struct page *,
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enum pt_level),
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unsigned long limit)
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static void __xen_pgd_walk(struct mm_struct *mm, pgd_t *pgd,
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void (*func)(struct mm_struct *mm, struct page *,
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enum pt_level),
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unsigned long limit)
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{
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int i, nr, flush = 0;
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int i, nr;
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unsigned hole_low = 0, hole_high = 0;
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/* The limit is the last byte to be touched */
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@ -633,22 +631,20 @@ static int __xen_pgd_walk(struct mm_struct *mm, pgd_t *pgd,
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continue;
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p4d = p4d_offset(&pgd[i], 0);
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flush |= xen_p4d_walk(mm, p4d, func, i == nr - 1, limit);
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xen_p4d_walk(mm, p4d, func, i == nr - 1, limit);
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}
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/* Do the top level last, so that the callbacks can use it as
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a cue to do final things like tlb flushes. */
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flush |= (*func)(mm, virt_to_page(pgd), PT_PGD);
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return flush;
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(*func)(mm, virt_to_page(pgd), PT_PGD);
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}
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static int xen_pgd_walk(struct mm_struct *mm,
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int (*func)(struct mm_struct *mm, struct page *,
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enum pt_level),
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unsigned long limit)
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static void xen_pgd_walk(struct mm_struct *mm,
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void (*func)(struct mm_struct *mm, struct page *,
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enum pt_level),
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unsigned long limit)
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{
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return __xen_pgd_walk(mm, mm->pgd, func, limit);
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__xen_pgd_walk(mm, mm->pgd, func, limit);
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}
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/* If we're using split pte locks, then take the page's lock and
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@ -681,26 +677,17 @@ static void xen_do_pin(unsigned level, unsigned long pfn)
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xen_extend_mmuext_op(&op);
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}
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static int xen_pin_page(struct mm_struct *mm, struct page *page,
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enum pt_level level)
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static void xen_pin_page(struct mm_struct *mm, struct page *page,
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enum pt_level level)
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{
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unsigned pgfl = TestSetPagePinned(page);
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int flush;
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if (pgfl)
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flush = 0; /* already pinned */
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else if (PageHighMem(page))
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/* kmaps need flushing if we found an unpinned
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highpage */
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flush = 1;
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else {
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if (!pgfl) {
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void *pt = lowmem_page_address(page);
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unsigned long pfn = page_to_pfn(page);
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struct multicall_space mcs = __xen_mc_entry(0);
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spinlock_t *ptl;
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flush = 0;
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/*
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* We need to hold the pagetable lock between the time
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* we make the pagetable RO and when we actually pin
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@ -737,8 +724,6 @@ static int xen_pin_page(struct mm_struct *mm, struct page *page,
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xen_mc_callback(xen_pte_unlock, ptl);
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}
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}
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return flush;
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}
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/* This is called just after a mm has been created, but it has not
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@ -752,14 +737,7 @@ static void __xen_pgd_pin(struct mm_struct *mm, pgd_t *pgd)
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xen_mc_batch();
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if (__xen_pgd_walk(mm, pgd, xen_pin_page, USER_LIMIT)) {
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/* re-enable interrupts for flushing */
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xen_mc_issue(0);
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kmap_flush_unused();
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xen_mc_batch();
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}
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__xen_pgd_walk(mm, pgd, xen_pin_page, USER_LIMIT);
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xen_do_pin(MMUEXT_PIN_L4_TABLE, PFN_DOWN(__pa(pgd)));
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@ -803,11 +781,10 @@ void xen_mm_pin_all(void)
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spin_unlock(&pgd_lock);
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}
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static int __init xen_mark_pinned(struct mm_struct *mm, struct page *page,
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enum pt_level level)
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static void __init xen_mark_pinned(struct mm_struct *mm, struct page *page,
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enum pt_level level)
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{
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SetPagePinned(page);
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return 0;
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}
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/*
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@ -823,12 +800,12 @@ static void __init xen_after_bootmem(void)
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xen_pgd_walk(&init_mm, xen_mark_pinned, FIXADDR_TOP);
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}
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static int xen_unpin_page(struct mm_struct *mm, struct page *page,
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enum pt_level level)
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static void xen_unpin_page(struct mm_struct *mm, struct page *page,
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enum pt_level level)
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{
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unsigned pgfl = TestClearPagePinned(page);
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if (pgfl && !PageHighMem(page)) {
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if (pgfl) {
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void *pt = lowmem_page_address(page);
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unsigned long pfn = page_to_pfn(page);
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spinlock_t *ptl = NULL;
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@ -859,8 +836,6 @@ static int xen_unpin_page(struct mm_struct *mm, struct page *page,
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xen_mc_callback(xen_pte_unlock, ptl);
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}
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}
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return 0; /* never need to flush on unpin */
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}
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/* Release a pagetables pages back as normal RW */
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@ -1554,20 +1529,14 @@ static inline void xen_alloc_ptpage(struct mm_struct *mm, unsigned long pfn,
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if (static_branch_likely(&xen_struct_pages_ready))
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SetPagePinned(page);
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if (!PageHighMem(page)) {
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xen_mc_batch();
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xen_mc_batch();
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__set_pfn_prot(pfn, PAGE_KERNEL_RO);
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__set_pfn_prot(pfn, PAGE_KERNEL_RO);
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if (level == PT_PTE && USE_SPLIT_PTE_PTLOCKS)
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__pin_pagetable_pfn(MMUEXT_PIN_L1_TABLE, pfn);
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if (level == PT_PTE && USE_SPLIT_PTE_PTLOCKS)
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__pin_pagetable_pfn(MMUEXT_PIN_L1_TABLE, pfn);
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xen_mc_issue(PARAVIRT_LAZY_MMU);
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} else {
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/* make sure there are no stray mappings of
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this page */
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kmap_flush_unused();
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}
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xen_mc_issue(PARAVIRT_LAZY_MMU);
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}
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}
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@ -1590,16 +1559,15 @@ static inline void xen_release_ptpage(unsigned long pfn, unsigned level)
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trace_xen_mmu_release_ptpage(pfn, level, pinned);
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if (pinned) {
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if (!PageHighMem(page)) {
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xen_mc_batch();
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xen_mc_batch();
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if (level == PT_PTE && USE_SPLIT_PTE_PTLOCKS)
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__pin_pagetable_pfn(MMUEXT_UNPIN_TABLE, pfn);
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if (level == PT_PTE && USE_SPLIT_PTE_PTLOCKS)
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__pin_pagetable_pfn(MMUEXT_UNPIN_TABLE, pfn);
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__set_pfn_prot(pfn, PAGE_KERNEL);
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__set_pfn_prot(pfn, PAGE_KERNEL);
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xen_mc_issue(PARAVIRT_LAZY_MMU);
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xen_mc_issue(PARAVIRT_LAZY_MMU);
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}
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ClearPagePinned(page);
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}
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}
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